Unveiling structural, chemical and magnetic interfacial peculiarities in ϵ-Fe2O3/GaN (0001) epitaxial films

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Abstract

The metastable ϵ-Fe2O3 is known to be the most intriguing ferrimagnetic and multiferroic iron oxide phase exhibiting a bunch of exciting physical properties both below and above room temperature. The present paper unveils the structural and magnetic peculiarities of a few nm thick interface layer discovered in these films by a number of techniques. The polarized neutron reflectometry data suggests that the interface layer resembles GaFeO3 in composition and density and is magnetically softer than the rest of the ϵ-Fe2O3 film. While the in-depth density variation is in agreement with the transmission electron microscopy measurements, the layer-resolved magnetization profiles are qualitatively consistent with the unusual wasp-waist magnetization curves observed by superconducting quantum interference device magnetometry. Interestingly a noticeable Ga diffusion into the ϵ-Fe2O3 films has been detected by secondary ion mass spectroscopy providing a clue to the mechanisms guiding the nucleation of exotic metastable epsilon ferrite phase on GaN at high growth temperature and influencing the interfacial properties of the studied films.

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Ukleev, V., Suturin, S., Nakajima, T., Arima, T. H., Saerbeck, T., Hanashima, T., … Sokolov, N. (2018). Unveiling structural, chemical and magnetic interfacial peculiarities in ϵ-Fe2O3/GaN (0001) epitaxial films. Scientific Reports, 8(1). https://doi.org/10.1038/s41598-018-25849-z

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